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Author Yang C., Lu X., Ma B., Chen S.Y., Zhang J.S.
Title Ethylene Signaling in Rice and Arabidopsis: Conserved and Diverged Aspects.
Abstract:
Ethylene as a gas phytohormone plays significant roles in the whole life cycle of plants, ranging from growth and development to stress responses. A linear ethylene signaling pathway has been established in the dicotyledonous model plant Arabidopsis. However, the ethylene signaling mechanism in monocotyledonous plants such as rice is largely unclear. In this review, we compare the ethylene response phenotypes of dark-grown seedlings of Arabidopsis, rice, and other monocotyledonous plants (maize, wheat, sorghum, and Brachypodium distachyon) and pinpoint that rice has a distinct phenotype of root inhibition but coleoptile promotion in etiolated seedlings upon ethylene treatment. We further summarize the homologous genes of Arabidopsis ethylene signaling components in these monocotyledonous plants and discuss recent progress. Although conserved in most aspects, ethylene signaling in rice has evolved new features compared with that in Arabidopsis. These analyses provide novel insights into the understanding of ethylene signaling in the dicotyledonous Arabidopsis and monocotyledonous plants, particularly rice. Further characterization of rice ethylene-responsive mutants and their corresponding genes will help us better understand the whole picture of ethylene signaling mechanisms in plants.
Journal Mol Plant
Country China
Volume 8(4)
Pages 495-505
Year 2015
PubMed ID 25732590
PubMed Central ID -
DOI 10.1016/j.molp.2015.01.003
URL -
Relation
Gene CRW1 CTR2 EBP-89 EIL1 EIL2 EIL3 EIL4 EIL5 EIL6 EIN2 EIN2B ERF102 ERF12 ERF3 ERF77 ERF93 ERS1 ERS2 ETR2 ETR3 ETR4 FBOX72 _ _ _ _ _ _ _
INSD -
Strain Wild Core Collection -
Induced Mutation Lines(NIG Collection) -
Sterile Seed Strain -
Lethal Embryo
Mutantion Strain
-
Stages in Each Organ
- Muant Lines (Gene)
-
Cultivated Varieties(NIG Collection) -
Stages in Each Organ -
/rice/oryzabase